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Modeling and analysis of a bimorph piezoelectric cantilever beam for voltage generation

机译:用于电压产生的双压电晶片压电悬臂梁的建模与分析

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Piezoelectric materials (PZT) have shown the ability to convert mechanical forces into an electric field in response to the application of mechanical stresses or vice versa. This property of the materials has found extensive applications in a vast array of areas including sensors and actuators. The study presented in this paper targets the modeling of a PZT bender for voltage and power generation by transforming ambient vibrations into electrical energy. This device can potentially replace the battery that supplies the power in a microwatt range necessary for operating sensors and data transmission. One of the advantages is that it is maintenance-free over a long time span. The feasibility of this application has been repeatedly demonstrated in the literature, but a real demonstration of a working device is partially successful because of the various design parameters necessary for a construction of the PZT bender. According to a literature survey, the device can be modeled using various approaches. This paper focuses on the analytical approach based on Euler-Bernoulli beam theory and Timoshenko beam equations for the voltage and power generation, which is then compared with two previously described models in the literature: the electrical equivalent circuit and energy method. The three models are then implemented in a Matlab/Simulink/Simpower environment and simulated with an AC/DC power conversion circuit. The results of the simulation and the experiment have been compared and discussed.
机译:压电材料(PZT)已显示出响应于施加机械应力而将机械力转换为电场的能力,反之亦然。这种材料的这种特性已在包括传感器和执行器在内的广泛领域中得到了广泛的应用。本文提出的研究目标是通过将环境振动转换为电能来为电压和功率生成的PZT弯曲机建模。该设备可以潜在地替换为传感器和数据传输所必需的微瓦范围内的电池。优点之一是,它可以长时间免维护。该应用的可行性已在文献中反复得到证明,但是由于PZT折弯机的构造所需的各种设计参数,工作装置的真实演示部分成功。根据文献调查,可以使用各种方法对设备进行建模。本文着重于基于基于Euler-Bernoulli束理论和Timoshenko束方程的电压和发电分析方法,然后将其与文献中先前描述的两个模型进行比较:等效电路和能量方法。然后,在Matlab / Simulink / Simpower环境中实现这三个模型,并使用AC / DC电源转换电路进行仿真。仿真和实验结果进行了比较和讨论。

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